Title |
Microbial production and applications of β-glucosidase-A review |
ID_Doc |
7545 |
Authors |
Yang, WQ; Su, YW; Wang, RB; Zhang, HY; Jing, HY; Meng, J; Zhang, GQ; Huang, LQ; Guo, LP; Wang, J; Gao, WY |
Title |
Microbial production and applications of β-glucosidase-A review |
Year |
2024 |
Published |
|
DOI |
10.1016/j.ijbiomac.2023.127915 |
Abstract |
beta-Glucosidase exists in all areas of living organisms, and microbial beta-glucosidase has become the main source of its production because of its unique physicochemical properties and the advantages of high-yield production by fermentation. With the rise of the green circular economy, the production of enzymes through the fermentation of waste as the substrate has become a popular trend. Lignocellulosic biomass is an easily accessible and sustainable feedstock that exists in nature, and the production of biofuels from lignocellulosic biomass requires the involvement of beta-glucosidase. This review proposes ways to improve beta-glucosidase yield and catalytic efficiency. Optimization of growth conditions and purification strategies of enzymes can increase enzyme yield, and enzyme immobilization, genetic engineering, protein engineering, and whole-cell catalysis provide solutions to enhance the catalytic efficiency and activity of beta-glucosidase. Besides, the diversified industrial applications, challenges and prospects of beta-glucosidase are also described. |
Author Keywords |
beta-Glucosidase; Biotransformation; Microorganisms; Fermentation; Saponins; Isoflavonoids |
Index Keywords |
Index Keywords |
Document Type |
Other |
Open Access |
Open Access |
Source |
Science Citation Index Expanded (SCI-EXPANDED) |
EID |
WOS:001133584300001 |
WoS Category |
Biochemistry & Molecular Biology; Chemistry, Applied; Polymer Science |
Research Area |
Biochemistry & Molecular Biology; Chemistry; Polymer Science |
PDF |
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